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Astronomers have detected possible chemical signs of life on a faraway planet. But they caution much more work is needed to confirm their findings.
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This study presents an innovative approach to single-atom catalysts, overcoming oxidative addition challenges in cross-coupling reactions for pharmaceuticals.
National University of Singapore (NUS) chemists have developed an “anchoring-borrowing” strategy, combined with facet engineering, to develop a new class of artful single-atom catalysts (ASACs). These ...
Understanding how molecules interact with ions is a cornerstone of chemistry, with applications from pollution detection and ...
Coupling reactions are among the most transformative tools in organic chemistry, enabling the formation of crucial chemical ...
The process of discovering molecules that have the properties needed to create new medicines and materials is cumbersome and ...
Coupling reactions are essential in the synthesis of pharmaceuticals, agrochemicals, and advanced materials, but traditional ...
Hosts David and Gina explore three historical breakthroughs that led to the proliferation of PFAS—and could help us get rid ...
Advanced computational software is streamlining quantum chemistry research by automating many of the processes of running ...
Industry groups representing hundreds of chemical and petrochemical manufacturers are seeking blanket exemptions from federal ...
It can only add single bits at a time and is limited to kilohertz clock speeds, but it is capable of executing the full RISC-V 32-bit instruction set thanks to nearly 6,000 individual transistors.
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